首页> 外文期刊>Nuclearmedicine >Resolution improvement and noise reduction in human pinhole SPECT using a multi-ray approach and the SHINE method.
【24h】

Resolution improvement and noise reduction in human pinhole SPECT using a multi-ray approach and the SHINE method.

机译:使用多射线方法和SHINE方法提高人针孔SPECT的分辨率并降低噪声。

获取原文
获取原文并翻译 | 示例
       

摘要

PURPOSE: This work aimed at quantifying the gains in spatial resolution and noise that could be achieved when using resolution modelling based on a multi-ray approach and additionally the Statistical and Heuristic Noise Extraction (SHINE) method in human pinhole single photon emission tomography (PH-SPECT). METHODS: PH-SPECT of two line phantoms and one homogeneous cylinder were recorded using parameters suited for studies of the human neck area. They were reconstructed using pinhole dedicated ordered subsets expectation maximisation algorithm including a resolution recovery technique based on 7 or 21 rays. Optionally, the SPECT data were SHINE pre-processed. Transverse and axial full widths at half-maximum (FWHM) were obtained from the line phantoms. The noise was quantified using the coefficient of variation (COV) derived from the uniform phantom. Two human PH-SPECT studies of the thyroid (a hot nodule and a very low uptake) were processed with the same algorithms. RESULTS: Depending on the number of iterations, FWHM decreased by 30 to 50% when using the multi-ray approach in the reconstruction process. The SHINE method did not affect the resolution but decreased the COV by at least 20% and by 45% when combined with the multi-ray method. The two human studies illustrated the gain in spatial resolution and the decrease in noise afforded both by the multi-ray reconstruction and the SHINE method. CONCLUSION: Iterative reconstruction with resolution modelling allows to obtain high resolution human PH-SPECT studies with reduced noise content. The SHINE method affords an additional noise reduction without compromising the resolution.
机译:目的:这项工作旨在量化在使用基于多射线方法的分辨率建模以及人针孔单光子发射层析成像(PH)中的统计和启发式噪声提取(SHINE)方法时可以实现的空间分辨率和噪声的增益-SPECT)。方法:使用适合研究人类颈部面积的参数记录两行幻像和一个均质圆柱体的PH-SPECT。使用针孔专用有序子集期望最大化算法(包括基于7或21射线的分辨率恢复技术)对它们进行了重建。可选地,对SPECT数据进行了SHINE预处理。从线体模型获得了横向和轴向最大宽度的一半(FWHM)。使用从统一体模得出的变异系数(COV)量化噪声。使用相同的算法处理了两项人类甲状腺的PH-SPECT研究(一个热的结节和一个非常低的摄取)。结果:根据迭代次数,在重建过程中使用多射线方法时,FWHM降低了30%至50%。 SHINE方法不影响分辨率,但与多射线方法结合使用时,COV降低了至少20%,降低了45%。两项人体研究表明,多射线重建和SHINE方法均可提供空间分辨率的提高和噪声的降低。结论:采用分辨率建模的迭代重建可实现具有降低的噪声含量的高分辨率人类PH-SPECT研究。 SHINE方法可在不影响分辨率的情况下进一步降低噪声。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号